Refrigerator
By incorporating rotating components and drive mechanisms within the refrigerator, containers can rotate within the refrigerator compartment, solving the problem of items freezing together, improving storage performance and user experience, and achieving uniform distribution of ice film on the surface of items and slowing down internal moisture.
Patent Information
- Application Number
- CN202520320917.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-02-26
AI Technical Summary
Items placed directly in the compartments of existing refrigerators tend to freeze together, resulting in poor storage performance and inconvenience for users.
A refrigerator has been designed, comprising a cabinet, a door, a rotating assembly, and a drive unit. The container in the rotating assembly rotates relative to the base under the drive unit, preventing items from freezing together and distributing moisture evenly during rotation to form an ice film to slow down the loss of water from the items.
It improves the storage effect and user experience of items, reduces the possibility of items freezing together, simplifies user operation, enhances the uniformity of ice film coverage on the surface of items, and prevents internal water loss.
Smart Images

Figure CN223869591U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] Embodiments of the present application relate to the technical field of refrigeration equipment. In particular, a refrigerator is provided. BACKGROUND
[0002] A refrigerator is a refrigeration equipment that keeps constant low temperature, and is also a product that keeps food or other articles in constant low temperature state.
[0003] The refrigerator is provided with a chamber, and the chamber is used for placing articles to keep the articles cold or fresh.
[0004] In the related art, some articles are directly placed in the chamber, which causes the articles to freeze together, thereby affecting the storage effect of the articles, and the user needs to split the frozen articles, which causes the user to be inconvenient to operate and the user experience to be poor. CONTENT OF THE UTILITY MODEL
[0005] Embodiments of the present application provide a refrigerator, which can solve the problem that some articles are directly placed in the chamber, which causes the articles to freeze together, thereby affecting the storage effect of the articles, and the user needs to split the frozen articles, which causes the user to be inconvenient to operate and the user experience to be poor.
[0006] Embodiments of the present application provide a refrigerator, which comprises:
[0007] A cabinet body is configured to form a chamber;
[0008] A door body is rotatably connected to the cabinet body to open or close the chamber;
[0009] A rotating assembly is installed in the chamber, and the rotating assembly comprises:
[0010] A base is arranged in the chamber;
[0011] A driving member is connected to at least one of the chamber and the base;
[0012] A container is rotatably connected to the base and is in transmission connection with the driving member, the container forms a placing cavity for storing articles, and the container is used to rotate relative to the base under the driving of the driving member.
[0013] Understandably, by setting up compartments, items can be placed to reduce contamination from the external environment. These compartments also help preserve the items. The rotating connection between the door and the container reduces the difficulty of opening and closing, improving the user experience. When the door is closed, the compartment minimizes contamination; when open, users can place items inside for preservation or remove them, catering to different scenarios and enhancing the user experience. The base supports the drive mechanism and container, which rotates the container relative to the base. Placing items in the storage chamber within the container allows for storage while minimizing the impact of the drive mechanism. The rotation of the container relative to the base, driven by the drive mechanism, causes the storage chamber to rotate, preventing items from sticking together and freezing, and dispersing any items that have already frozen and adhered. In addition, the rotation process can make the surface moisture of the item more evenly distributed, forming a uniform ice film on the outer surface of the item, thereby slowing down or preventing the loss of water inside the item.
[0014] In one feasible implementation, the container includes:
[0015] A first housing is rotatably connected to the base, and the first housing forms a placement cavity;
[0016] The second housing is connected to the side of the first housing away from the base, and the second housing is configured to cooperate with the first housing. The second housing is used to open or close the placement cavity.
[0017] The first and second housings are fixedly connected when the container rotates relative to the base.
[0018] Understandably, the second housing is used to open or close the placement cavity, reducing the difficulty for users to retrieve or place items into the cavity. When the container rotates relative to the base, the first and second housings remain fixedly connected, increasing the connection strength between them and reducing the likelihood of items falling from the placement cavity relative to the first housing, thus improving the stability of the placement.
[0019] In one feasible implementation, the base includes:
[0020] The base body is connected to the inner wall of the compartment;
[0021] The rotating frame is rotatably mounted on the side of the base body away from the inner wall of the compartment;
[0022] The first shell is connected to the rotating frame.
[0023] It can be understood that the base body is used to connect with the chamber, and can support the rotating frame, so as to reduce the connection difficulty between the base and the chamber. The rotating frame is used to support the first shell, so that the rotating frame can drive the first shell to rotate relative to the base body.
[0024] In an embodiment, the driving member comprises:
[0025] The motor is installed on at least one of the base body and the chamber;
[0026] The connecting member is connected to the output end of the motor at one end, and is drivingly connected to the end of the rotating frame away from the first shell at the other end;
[0027] The motor is used to drive the connecting member to rotate relative to the chamber, so as to drive the rotating frame to rotate relative to the base body.
[0028] It can be understood that the motor is used to drivingly connect with the rotating frame, so as to drive the rotating frame to rotate relative to the base body, so that the rotating frame can drive the first shell to rotate relative to the base body. The connecting member is used to drivingly connect the rotating frame and the motor, so as to improve the connection stability between the motor and the rotating frame, and make the rotation of the rotating frame driven by the motor more stable, so as to improve the rotation stability of the rotating assembly.
[0029] In an embodiment, the rotating assembly further comprises:
[0030] The fixing assembly is arranged on the rotating frame and is used to fix the second shell.
[0031] It can be understood that the fixing assembly is arranged to fix the second shell, so as to reduce the occurrence of the second shell being separated from the first shell, thereby reducing the occurrence of the articles falling off the first shell, and improving the operation stability of the rotating assembly.
[0032] In an embodiment, the fixing assembly comprises:
[0033] The first hook is installed on the first side of the rotating frame;
[0034] The second hook is installed on the second side of the rotating frame;
[0035] The anti-disengagement member is connected to the first hook at one end, and is connected to the second hook at the other end. The anti-disengagement member is located on the side of the second shell away from the base body and is connected to the second shell.
[0036] The first side and the second side are arranged on opposite side surfaces of the rotating frame along the horizontal direction of the box body.
[0037] It can be understood that the second shell can be fixed by arranging the first hook, the second hook and the anti-disengagement piece. The anti-disengagement piece is located on the side of the second shell away from the base body and connected with the second shell, thereby fixing the first shell and the second shell. The occurrence of disengagement of the second shell relative to the first shell can be reduced to avoid the falling of the articles from the shell during the rotation of the rotating assembly, thereby improving the operation stability of the rotating assembly. The first hook and the second hook are arranged, which has the advantage of facilitating disassembly, thereby simplifying the operation process of the user and improving the use experience of the user.
[0038] In a feasible implementation, the first shell includes a first shell part and a second shell part connected with each other. An abutment surface is arranged at the connection of the first shell part and the second shell part. The abutment surface is located on the outer wall of the first shell and abuts against the side of the rotating frame away from the base body.
[0039] It can be understood that the abutment surface is used to limit the installation position of the first shell on the rotating assembly to support the first shell. The abutment surface is located at the connection of the first shell part and the second shell part, which can reduce the processing difficulty of the abutment surface, thereby reducing the processing difficulty of the first shell. The abutment surface is located on the outer wall of the first shell, which can reduce the connection difficulty between the first shell and the rotating frame.
[0040] In a feasible implementation, the base body includes:
[0041] A base segment connected to the inner wall of the chamber;
[0042] Two support segments connected to opposite ends of the base segment along the depth direction of the box body. One end of the support segment away from the base segment is rotationally connected with the rotating frame.
[0043] It can be understood that the base segment is used to connect with the inner wall of the chamber. The two support segments are connected to opposite ends of the base segment, which can increase the contact area between the base body and the chamber to reduce the occurrence of stress concentration between the base body and the chamber, thereby prolonging the service life of the base body or the chamber. One end of the support segment away from the base segment is rotationally connected with the rotating frame, which can reduce the connection difficulty between the rotating frame and the base body to improve the installation efficiency between the base body and the rotating frame.
[0044] In a feasible implementation, the two support segments are each provided with a first connecting hole. The rotating frame is provided with a second connecting hole corresponding to the first connecting hole of the two support segments.
[0045] The base further comprises a rotating shaft, one end of the rotating shaft is rotatably connected to one of the first connecting hole and the second connecting hole, and the other end of the rotating shaft is fixedly connected to the other one of the first connecting hole and the second connecting hole.
[0046] The rotating shaft extends horizontally along the depth direction of the box body.
[0047] It can be understood that the rotating shaft is used to connect the first connecting hole and the second connecting hole, so that the rotating frame can be rotatably connected to the base body. By arranging the rotating shaft, the first connecting hole and the second connecting hole, the connection difficulty between the rotating frame and the base body can be reduced, and the installation efficiency between the rotating frame and the base body can be improved.
[0048] In an available embodiment, the rotating frame comprises a first frame body, a second frame body, a third frame body and a fourth frame body connected in sequence.
[0049] The first frame body and the third frame body are oppositely arranged along the depth direction of the box body, and the second frame body and the fourth frame body are oppositely arranged along the width direction of the box body.
[0050] The first frame body and the third frame body are both provided with the second connecting hole, and the second connecting hole on the first frame body is located at the center of the first frame body along the width direction of the box body, and the second connecting hole on the third frame body is located at the center of the third frame body along the width direction of the box body.
[0051] It can be understood that the first frame body, the second frame body, the third frame body and the fourth frame body are connected in sequence to enclose the rotating frame, which has the advantage of simple processing. The first frame body and the third frame body are oppositely arranged along the depth direction of the box body, and the second frame body and the fourth frame body are oppositely arranged along the width direction of the box body, which can improve the space utilization of the rotating frame in the chamber and reduce the processing difficulty of the rotating frame. The first frame body and the third frame body are both provided with the second connecting hole, which can make the container extend along the depth direction of the box body, so that the user can conveniently divide the chamber into the installation area and the storage area of the rotating assembly along the extension direction of the box body, thereby reducing the mutual interference between the installation area and the storage area of the rotating assembly to improve the user's experience. The second connecting hole on the first frame body is located at the center of the first frame body along the width direction of the box body, and the second connecting hole on the third frame body is located at the center of the third frame body along the width direction of the box body, which can make the straight line where the rotation center of the rotating frame is located be collinear with the line connecting the center of the first frame extension direction and the center of the third frame extension direction, so that the rotating speed of the rotating frame relative to the base body is more uniform, thereby prolonging the service life of the base and the rotating assembly. BRIEF DESCRIPTION OF DRAWINGS
[0052] To more clearly illustrate the implementation methods in the embodiments of this application or related technologies, the accompanying drawings used in the description of the embodiments or related technologies will be briefly introduced below. Obviously, the accompanying drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings.
[0053] Figure 1 One of the schematic diagrams of the main structure of a refrigerator provided for an embodiment of this application;
[0054] Figure 2 A second schematic diagram of the main structure of a refrigerator provided for an embodiment of this application;
[0055] Figure 3 A schematic diagram of the connection structure between the rotating assembly and the compartment provided in an embodiment of this application;
[0056] Figure 4 A schematic diagram of the main structure of the driving component provided in the embodiments of this application;
[0057] Figure 5 A schematic diagram of the main structure of the rotating assembly provided in an embodiment of this application;
[0058] Figure 6 A schematic diagram of the main structure of the base provided in an embodiment of this application;
[0059] Figure 7 A schematic diagram of the main structure of the container provided for an embodiment of this application;
[0060] Figure 8 A schematic diagram of the main structure of the base body provided for an embodiment of this application;
[0061] Figure 9 A schematic diagram of the main structure of the rotating frame provided in an embodiment of this application;
[0062] Figure 10 A schematic diagram of the connection structure between the rotating frame and the fixing component provided in an embodiment of this application.
[0063] Figure label:
[0064] 10 - Enclosure; 11 - Compartment;
[0065] 20-Gate body;
[0066] 30 - Rotating assembly;
[0067] 100 - Base; 101 - Base body; 1011 - Base section; 1012 - Support section; 1013 - First connecting hole; 102 - Rotating frame; 1021 - First frame; 1022 - Second frame; 1023 - Third frame; 1024 - Fourth frame; 1025 - Second connecting hole; 103 - Rotating shaft;
[0068] 200 - Drive component; 201 - Motor; 202 - Connector;
[0069] 300 - Container; 301 - First shell; 3011 - First shell section; 3012 - Second shell section; 302 - Second shell;
[0070] 400 - Fixing component; 401 - First hook; 402 - Second hook; 403 - Anti-slip component. Detailed Implementation
[0071] To make the objectives, implementation methods and advantages of this application clearer, the exemplary implementation methods of this application will be clearly and completely described below with reference to the accompanying drawings of the exemplary embodiments of this application. Obviously, the described exemplary embodiments are only some embodiments of this application, and not all embodiments.
[0072] It should be noted that the brief descriptions of terms in this application are only for the convenience of understanding the embodiments described below, and are not intended to limit the embodiments of this application. Unless otherwise stated, these terms should be understood in their ordinary and common meaning.
[0073] Furthermore, the terms “comprising” and “having”, and any variations thereof, are intended to cover but not exclusively include, for example, a product or device that includes a series of components is not necessarily limited to those that are explicitly listed, but may include other components that are not explicitly listed or that are inherent to such product or device.
[0074] In the description of this application, it should be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0075] The terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, unless otherwise stated, "a plurality of" means two or more.
[0076] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0077] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0078] In related technologies, for small items with surface moisture, such as mixed vegetables or shrimp, if placed directly in the freezer compartment, the water at overlapping areas will turn into ice, causing the items to freeze together and affecting their storage performance. Frozen items then need to be separated by the user, leading to inconvenience and a poor user experience.
[0079] In the refrigerator provided in this application, compartments are provided to store items, reducing contamination from the external environment. These compartments also help preserve the items. The rotating connection between the door and the main body reduces the difficulty of opening and closing, improving the user experience. When the door is closed, the compartments minimize contamination; when the door is open, users can place items inside for preservation or remove them, catering to different needs and enhancing the user experience. A base supports the drive mechanism and container. The drive mechanism rotates the container relative to the base. Items are stored within the container's storage chamber, minimizing the impact of the drive mechanism. The rotation of the container relative to the base, driven by the drive mechanism, causes the storage chamber to rotate, preventing items from sticking together and freezing. It also disperses any items that have already frozen and adhered together during rotation. In addition, the rotation process can make the surface moisture of the item more evenly distributed, forming a uniform ice film on the outer surface of the item, thereby slowing down or preventing the loss of water inside the item.
[0080] This solves the problem of some items being placed directly in the room, freezing together and affecting the storage effect, and requiring users to separate the frozen items, which leads to inconvenience and a poor user experience.
[0081] like Figure 1 and Figure 2 As shown, the refrigerator provided in the embodiment of this application includes: a cabinet 10, the cabinet 10 being configured to form a compartment 11.
[0082] It is understandable that the compartment 11 is used to place items to reduce the contamination of items by the external environment, and the compartment 11 can keep items fresh.
[0083] The refrigerator provided in the embodiments of this application further includes: a door 20, which is rotatably connected to the cabinet 10 to open or close the compartment 11.
[0084] Understandably, the rotating connection between the door 20 and the cabinet 10 reduces the difficulty of opening or closing the door 20 and the cabinet 10, thereby improving the user experience. When the door 20 is closed over the compartment 11, the door 20 is used to keep the items inside the compartment 11 fresh and reduces the contamination of the items by the external environment. When the door 20 is open over the compartment 11, the user can place items into the compartment 11 to keep them fresh or take items out of the compartment 11 to meet the user's needs in different scenarios, thereby improving the user experience.
[0085] like Figure 3 and Figure 4 As shown, the refrigerator provided in the embodiments of this application further includes a rotating assembly 30, which is installed in the compartment 11.
[0086] It is understandable that the rotating component 30 is installed in the chamber 11 so that the rotating component 30 can be cooled along with the chamber 11, and the chamber 11 can protect the rotating component 30 to extend the service life of the rotating component 30.
[0087] like Figure 5 and Figure 6 As shown, the rotating assembly 30 provided in the embodiment of this application includes: a base 100, which is disposed in the chamber 11.
[0088] Understandably, by setting the base 100, the drive component 200 and the container 300 in the rotating assembly 30 can be supported.
[0089] The rotating assembly 30 provided in the embodiments of this application further includes a drive member 200, which is connected to at least one of the chamber 11 and the base 100.
[0090] Understandably, the drive unit 200 is used to drive the container 300 in the rotating assembly 30 to rotate relative to the base 100.
[0091] It should be noted that the driver 200 has a variety of different installation positions, and the installation positions of the driver 200 will be illustrated in the following examples.
[0092] In one possible implementation, the drive unit 200 is connected to the compartment 11.
[0093] Understandably, when the drive unit 200 is connected to the compartment 11, the installation strength of the drive unit 200 and the compartment 11 can be improved, thereby extending the service life of the refrigerator.
[0094] In another possible implementation, the drive element 200 is connected to the base 100.
[0095] Understandably, the drive unit 200 is connected to the base 100, which allows the rotating component 30 to be installed in multiple different positions. This allows the user to adjust the installation position of the rotating component 30 according to actual usage needs, thereby improving the user experience.
[0096] It should be noted that in the relevant technology, the compartment 11 is equipped with a pull-out drawer, the base 100 can be installed in the drawer, and the drive component 200 is installed on the base 100. Users can change the installation position of the drawer and the compartment 11 according to their usage habits, so as to change the setting position of the rotating component 30 relative to the compartment 11, thereby improving the user experience.
[0097] In addition, in another feasible embodiment, the drive unit 200 is connected to the compartment 11 and the base 100 respectively.
[0098] It is understandable that the drive component 200 is connected to the compartment 11 and the base 100 respectively, which can improve the connection strength between the drive component 200 and the compartment 11 and the base 100, thereby extending the service life of the refrigerator.
[0099] Understandably, there are no restrictions on the installation location of the driver component 200; it can be selected according to actual usage requirements.
[0100] like Figure 7 As shown, the rotating assembly 30 provided in the embodiment of this application further includes: a container 300, which is rotatably connected to the base 100 and is connected to the driving member 200. The container 300 forms a placement cavity for storing items and is used to rotate relative to the base 100 under the drive of the driving member 200.
[0101] Understandably, by placing items within the storage cavity of container 300, items can be stored while reducing the impact of the drive unit 200 on the items. By rotating container 300 relative to base 100 under the drive of the drive unit 200, the storage cavity rotates the items, preventing them from sticking together and freezing. It also disperses any items that are already frozen and stuck together during rotation. Furthermore, the rotation process allows for a more even distribution of moisture on the surface of the items, forming a uniform ice film on the outer surface, thus slowing down or preventing internal water loss.
[0102] The container 300 provided in the embodiments of this application includes a first housing 301 and a second housing 302. The first housing 301 is rotatably connected to the base 100 and forms a placement cavity. The second housing 302 is connected to the side of the first housing 301 away from the base 100 and is configured to cooperate with the first housing 301.
[0103] It should be noted that the second housing 302 is used to open or close the placement cavity to reduce the difficulty for the user to take items out of the placement cavity or place items into the placement cavity.
[0104] It should be noted that when the container 300 rotates relative to the base 100, the first housing 301 and the second housing 302 are fixedly connected.
[0105] It is understandable that when the container 300 rotates relative to the base 100, the first shell 301 and the second shell 302 are fixedly connected, which can reduce the connection strength between the first shell 301 and the second shell 302, thereby reducing the occurrence of items falling from the placement cavity relative to the first shell 301 and improving the stability of the items.
[0106] It should be noted that there are several different ways to connect the first housing 301 and the second housing 302. Examples of the connection methods between the first housing 301 and the second housing 302 will be given below.
[0107] In one feasible implementation, the first housing 301 and the second housing 302 are fastened together.
[0108] It is understandable that the snap-fit connection between the first housing 301 and the second housing 302 can reduce the difficulty for users to open or close the second housing 302 and the placement cavity, thereby improving the user experience. It can also reduce the space occupied by the first housing 301 and the second housing 302, thereby improving the utilization rate of the internal space of the compartment 11.
[0109] In another feasible embodiment, the second housing 302 is rotatably disposed on the first housing 301.
[0110] It is understood that the second housing 302 is rotatably mounted on the first housing 301. Rotating the second housing 302 toward the side away from the first housing 301 allows the second housing 302 to open the placement cavity. Rotating the second housing 302 toward the side close to the first housing 301 allows the second housing 302 to abut against the first housing 301 to close the placement cavity, which has the advantage of being easy to operate.
[0111] It is understandable that the connection method between the first housing 301 and the second housing 302 is not limited and can be selected according to actual usage requirements.
[0112] like Figure 8 and Figure 9As shown, the base 100 provided in the embodiment of this application includes: a base body 101 and a rotating frame 102. The base body 101 is connected to the inner wall of the compartment 11, and the rotating frame 102 is rotatably disposed on the side of the base body 101 away from the inner wall of the compartment 11. The first housing 301 is connected to the rotating frame 102.
[0113] Understandably, the base body 101 is used to connect with the compartment 11 and can support the rotating frame 102, thereby reducing the difficulty of connecting the base 100 and the compartment 11. The rotating frame 102 is used to support the first housing 301 so that the rotating frame 102 can drive the first housing 301 to rotate relative to the base body 101.
[0114] The driving component 200 provided in the embodiments of this application includes a motor 201, which is mounted on at least one of the base body 101 and the compartment 11.
[0115] It is understood that the motor 201 is used to drive the rotating frame 102 to rotate relative to the base body 101, thereby enabling the rotating frame 102 to drive the first housing 301 to rotate relative to the base body 101.
[0116] The driving component 200 provided in the embodiments of this application further includes: a connector 202, one end of which is connected to the output end of the motor 201, and the other end of which is connected to the end of the rotating frame 102 away from the first housing 301.
[0117] It is understandable that the motor 201 is used to drive the connector 202 to rotate relative to the chamber 11, thereby driving the rotating frame 102 to rotate relative to the base body 101.
[0118] It is understood that the connector 202 is used to drive the rotating frame 102 and the motor 201 to improve the connection stability between the motor 201 and the rotating frame 102, and to make the rotation of the rotating frame 102 driven by the motor 201 smoother, thereby improving the rotation stability of the rotating assembly 30.
[0119] It should be noted that the connecting part 202 is one or a combination of couplings, reducers or other devices used to transmit the output torque of motor 201. There are no restrictions here, and it can be selected according to actual usage requirements.
[0120] It should be noted that motor 201 has a variety of different output modes, which will be illustrated below with examples.
[0121] In one feasible implementation, the motor 201 is used to drive the connector 202 to rotate relative to the compartment 11, and to drive the rotating frame 102 to rotate relative to the compartment 11.
[0122] It is understandable that when the rotating frame 102 rotates relative to the chamber 11, the rotating frame 102 will drive the first housing 301 to rotate, thereby driving the items in the placement cavity to rotate synchronously with the first housing 301, thereby reducing the adhesion between the items in the placement cavity and dispersing the items that have already stuck together.
[0123] In another feasible implementation, the motor 201 is used to drive the connector 202 to rotate relative to the compartment 11, and to drive the rotating frame 102 to rotate relative to the compartment 11.
[0124] It is understandable that when the rotating frame 102 rotates relative to the chamber 11, the rotating frame 102 will drive the first housing 301 to rotate, thereby driving the items in the placement cavity to rotate synchronously with the first housing 301, thereby reducing the adhesion between the items in the placement cavity.
[0125] Understandably, there are no restrictions on the specific output mode of motor 201, and it can be selected according to actual usage requirements.
[0126] The refrigerator provided in the embodiments of this application further includes: a fixing component 400, which is disposed on the rotating frame 102 and is used to fix the second housing 302.
[0127] It is understandable that the fixing component 400 can fix the second housing 302 to reduce the occurrence of the second housing 302 detaching from the first housing 301, thereby reducing the occurrence of the item falling off the first housing 301 and improving the operational stability of the rotating component 30.
[0128] like Figure 10 As shown, it should be noted that the fixing component 400 includes: a first hook 401, a second hook 402, and an anti-detachment component 403. The first hook 401 is installed on the first side of the rotating frame 102, the second hook 402 is installed on the second side of the rotating frame 102, one end of the anti-detachment component 403 is connected to the first hook 401, and the other end of the anti-detachment component 403 is connected to the second hook 402. The anti-detachment component 403 is located on the side of the second housing 302 away from the base body 101 and is connected to the second housing 302. The first side and the second side are respectively located on opposite sides of the rotating frame 102 along the horizontal direction of the housing 10.
[0129] It is understandable that by setting the first hook 401, the second hook 402, and the anti-detachment component 403, the second housing 302 can be fixed. The anti-detachment component 403 is located on the side of the second housing 302 away from the base body 101 and is connected to the second housing 302, thereby fixing the first housing 301 and the second housing 302. This reduces the occurrence of the second housing 302 detaching from the first housing 301, thus preventing items from falling out of the housing during the rotation of the rotating assembly 30, and improving the operational stability of the rotating assembly 30. Furthermore, the first hook 401 and the second hook 402 are easy to disassemble, simplifying the user's operation process and improving the user experience.
[0130] It should be noted that the anti-detachment component 403 has several different settings, and the following examples illustrate the settings of the anti-detachment component 403.
[0131] In one feasible implementation, the anti-detachment component 403 is a rope, one end of which is connected to the first hook 401, and the other end of which is connected to the second hook 402. The rope is located on the side of the second housing 302 away from the base body 101.
[0132] It is understandable that the rope can fix the second housing 302 to improve the connection strength between the first housing 301 and the second housing 302, and the rope has the advantage of low processing cost, which can reduce the processing cost of the rotating component 30.
[0133] In another feasible embodiment, the anti-detachment component 403 is a cover plate, one end of which is connected to the first hook 401, and the other end of which is connected to the second hook 402. The cover plate is located on the side of the second housing 302 away from the base body 101.
[0134] It is understandable that the cover plate can fix the second housing 302 to improve the connection strength between the first housing 301 and the second housing 302. The cover plate has the advantage of high strength, which can improve the fixing strength between the second housing 302 and the first housing 301, thereby protecting the items inside the first housing 301.
[0135] Understandably, there are no restrictions on how the anti-detachment component 403 is set up; it can be selected according to actual usage needs.
[0136] The first housing 301 provided in the embodiments of this application includes a first housing part 3011 and a second housing part 3012 connected to each other. An abutment surface is provided at the connection between the first housing part 3011 and the second housing part 3012. The abutment surface is located on the outer wall of the first housing 301 and abuts against the side of the rotating frame 102 away from the base body 101.
[0137] Understandably, the abutment surface is used to limit the mounting position of the first housing 301 on the rotating assembly 30, thereby supporting the first housing 301. The abutment surface is located at the connection between the first housing portion 3011 and the second housing portion 3012, which can reduce the processing difficulty of the abutment surface, thereby reducing the processing difficulty of the first housing 301.
[0138] It should be noted that, along the height direction of the housing 10, the second housing part 3012 is located on the side of the first housing 301 away from the base body 101, and the side of the second housing part 3012 away from the first housing part 3011 is connected to the second housing 302.
[0139] It should be noted that the cross-sectional area of the second housing part 3012 is larger than the cross-sectional area of the first housing part 3011, and the connection between the second housing part 3012 and the first housing part 3011 forms an abutment surface.
[0140] It should be noted that part of the first housing portion 3011 is located in the inner ring of the rotating frame 102, and the contact surface abuts against the upper end surface of the rotating frame 102 along the height direction of the housing 10.
[0141] The base body 101 provided in the embodiments of this application includes a base segment 1011 and two support segments 1012. The base segment 1011 is connected to the inner wall of the compartment 11, and along the depth direction of the box 10, the two support segments 1012 are respectively connected to the opposite ends of the base segment 1011; the end of the support segment 1012 facing away from the base segment 1011 is rotatably connected to the rotating frame 102.
[0142] Understandably, the base section 1011 is used to connect with the inner wall of the compartment 11, and the two support ends are respectively connected to the opposite ends of the base 100. This can increase the contact area between the base body 101 and the compartment 11, thereby reducing stress concentration between the base body 101 and the compartment 11 and extending the service life of the base body 101 or the compartment 11. The end of the support section 1012 facing away from the base section 1011 is rotatably connected to the rotating frame 102, which can reduce the connection difficulty between the rotating frame 102 and the base body 101 and improve the installation efficiency between the base body 101 and the rotating frame 102.
[0143] The embodiments of this application provide two support sections 1012, each of which is provided with a first connecting hole 1013, and the rotating frame 102 is provided with a second connecting hole 1025 at the positions corresponding to the first connecting holes 1013 of the two support sections 1012.
[0144] The base 100 also includes: a rotating shaft 103, one end of which is rotatably connected to one of the first connecting hole 1013 and the second connecting hole 1025, and the other end of which is fixedly connected to the other of the first connecting hole 1013 and the second connecting hole 1025; the rotating shaft 103 extends horizontally along the depth direction of the housing 10.
[0145] It is understandable that the rotating shaft 103 is used to connect the first connecting hole 1013 and the second connecting hole 1025 so that the rotating frame 102 can be rotatably connected to the base body 101. By setting the rotating shaft 103, the first connecting hole 1013 and the second connecting hole 1025, the connection difficulty between the rotating frame 102 and the base body 101 can be reduced, and the installation efficiency between the rotating frame 102 and the base body 101 can be improved.
[0146] It is understandable that the horizontal extension of the pivot 103 along the depth direction of the housing 10 can make the connection between the rotating frame 102 and the base body 101 more stable, and can reduce the space occupied by the pivot 103, thereby reducing the space occupied at the connection between the rotating frame 102 and the base body 101, and thus improving the space utilization rate in the compartment 11.
[0147] The rotating frame 102 provided in the embodiments of this application includes a first frame 1021, a second frame 1022, a third frame 1023, and a fourth frame 1024 connected end to end in sequence; the first frame 1021 and the third frame 1023 are arranged opposite each other along the depth direction of the box 10, and the second frame 1022 and the fourth frame 1024 are arranged opposite each other along the width direction of the box 10; both the first frame 1021 and the third frame 1023 are provided with a second connecting hole 1025, the second connecting hole 1025 on the first frame 1021 is located at the center of the first frame 1021 along the width direction of the box 10, and the second connecting hole 1025 on the third frame 1023 is located at the center of the third frame 1023 along the width direction of the box 10.
[0148] It is understandable that the first frame 1021, the second frame 1022, the third frame 1023, and the fourth frame 1024 are connected end to end to form the rotating frame 102, which has the advantage of simple processing. The first frame 1021 and the third frame 1023 are arranged opposite each other along the depth direction of the box 10, and the second frame 1022 and the fourth frame 1024 are arranged opposite each other along the width direction of the box 10. This can improve the space utilization of the rotating frame 102 in the compartment 11 and reduce the processing difficulty of the rotating frame 102. The first frame 1021 and the third frame 1023 are both provided with second connecting holes 1025, which allows the container 300 to extend along the depth direction of the box 10. This allows the user to easily divide the compartment 11 along the extension direction of the box 10 into the installation area and storage area of the rotating component 30, thereby reducing mutual interference between the installation area and the storage area of the rotating component 30 and improving the user experience. The second connecting hole 1025 on the first frame 1021 is located at the center of the first frame 1021 along the width direction of the box 10, and the second connecting hole 1025 on the third frame 1023 is located at the center of the third frame 1023 along the width direction of the box 10. This allows the straight line where the rotation center of the rotating frame 102 is located to be collinear with the line connecting the center of the first frame extension direction and the center of the third frame extension direction. This makes the rotation speed of the rotating frame 102 relative to the base body 101 more uniform, thereby extending the service life of the base 100 and thus extending the service life of the rotating assembly 30.
[0149] It should be noted that the horizontal direction of the box 10 is the direction perpendicular to the height direction of the box 10. It can be the depth direction of the box 10, the extension direction of the box 10, or other directions perpendicular to the height direction of the box 10. There are no restrictions here, and it can be selected according to the actual use requirements.
[0150] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
[0151] For ease of explanation, the above description has been provided in conjunction with specific embodiments. However, the above exemplary discussion is not intended to be exhaustive or to limit the embodiments to the specific forms disclosed above. Various modifications and variations can be obtained based on the above teachings. The selection and description of the above embodiments are for the purpose of better explaining the principles and practical applications, thereby enabling those skilled in the art to better utilize the described embodiments and various different variations of embodiments suitable for specific use considerations.
Claims
1. A refrigerator, characterized in that, include: The box (10) is constructed to form a compartment (11). The door (20) is rotatably connected to the box (10) to open or close the compartment (11). A rotating assembly (30) is installed within the compartment (11), the rotating assembly (30) comprising: A base (100) is disposed within the compartment (11); A drive unit (200) is connected to at least one of the compartment (11) and the base (100); A container (300) is rotatably connected to the base (100) and is driven by the drive member (200). The container (300) forms a storage cavity for storing items. The container (300) is used to rotate relative to the base (100) under the drive of the drive member (200).
2. The refrigerator according to claim 1, characterized in that, The container (300) includes: A first housing (301) is rotatably connected to the base (100), and the first housing (301) forms the placement cavity; The second housing (302) is connected to the side of the first housing (301) away from the base (100), and the second housing (302) is configured to cooperate with the first housing (301). The second housing (302) is used to open or close the placement cavity. When the container (300) rotates relative to the base (100), the first housing (301) and the second housing (302) are fixedly connected.
3. The refrigerator according to claim 2, characterized in that, The base (100) includes: The base body (101) is connected to the inner wall of the compartment (11); The rotating frame (102) is rotatably disposed on the side of the base body (101) away from the inner wall of the compartment (11); The first housing (301) is connected to the rotating frame (102).
4. The refrigerator according to claim 3, characterized in that, The drive unit (200) includes: A motor (201) is installed in at least one of the base body (101) and the compartment (11); A connector (202) is provided, one end of which is connected to the output end of the motor (201), and the other end of which is connected to the end of the rotating frame (102) away from the first housing (301). The motor (201) is used to drive the connector (202) to rotate relative to the compartment (11), so as to drive the rotating frame (102) to rotate relative to the base body (101).
5. The refrigerator according to claim 3, characterized in that, Also includes: A fixing component (400) is provided on the rotating frame (102) and is used to fix the second housing (302).
6. The refrigerator according to claim 5, characterized in that, The fixing component (400) includes: The first hook (401) is installed on the first side of the rotating frame (102); The second hook (402) is installed on the second side of the rotating frame (102); Anti-detachment component (403), one end of which is connected to the first hook (401), and the other end of which is connected to the second hook (402); the anti-detachment component (403) is located on the side of the second housing (302) away from the base body (101) and is connected to the second housing (302); The first side and the second side are respectively located on opposite sides of the rotating frame (102) along the horizontal direction of the box (10).
7. The refrigerator according to claim 3, characterized in that, The first housing (301) includes a first housing part (3011) and a second housing part (3012) connected to each other. An abutment surface is provided at the connection between the first housing part (3011) and the second housing part (3012). The abutment surface is located on the outer wall of the first housing (301) and abuts against the side of the rotating frame (102) away from the base body (101).
8. The refrigerator according to claim 3, characterized in that, The base body (101) includes: A base section (1011) is connected to the inner wall of the compartment (11); Two support sections (1012) are connected to opposite ends of the base section (1011) along the depth direction of the box (10); the end of the support section (1012) away from the base section (1011) is rotatably connected to the rotating frame (102).
9. The refrigerator according to claim 8, characterized in that, Both of the support sections (1012) are provided with a first connecting hole (1013), and the rotating frame (102) is provided with a second connecting hole (1025) at the position corresponding to the first connecting hole (1013) of the two support sections (1012). The base (100) further includes: a rotating shaft (103), one end of which is rotatably connected to one of the first connecting hole (1013) and the second connecting hole (1025), and the other end of which is fixedly connected to the other of the first connecting hole (1013) and the second connecting hole (1025); The rotating shaft (103) extends horizontally along the depth direction of the housing (10).
10. The refrigerator according to claim 9, characterized in that, The rotating frame (102) includes a first frame (1021), a second frame (1022), a third frame (1023) and a fourth frame (1024) connected end to end in sequence. The first frame (1021) and the third frame (1023) are arranged opposite each other along the depth direction of the box (10), and the second frame (1022) and the fourth frame (1024) are arranged opposite each other along the width direction of the box (10). Both the first frame (1021) and the third frame (1023) are provided with the second connecting hole (1025). The second connecting hole (1025) on the first frame (1021) is located at the center of the first frame (1021) along the width direction of the box (10), and the second connecting hole (1025) on the third frame (1023) is located at the center of the third frame (1023) along the width direction of the box (10).